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负载于聚偏氟乙烯膜上的二氧化钛用于光催化膜处理染料废水。

TiO coated on PVDF membrane for dye wastewater treatment by a photocatalytic membrane.

作者信息

Penboon L, Khrueakham A, Sairiam S

机构信息

Department of Environmental Science, Faculty of Science, Chulalongkorn University, Bangkok 10330, Thailand E-mail:

Division of Research Administration and Academic Service, Kasetsart University Chalermphrakiat Sakon Nakhon Province Campus, Sakon Nakhon 47000, Thailand.

出版信息

Water Sci Technol. 2019 Mar;79(5):958-966. doi: 10.2166/wst.2019.023.

Abstract

This work investigated the membrane modification to increase hydrophilicity aiming for application in a photocatalytic membrane. The modified poly(vinylidene fluoride) (PVDF) flat sheet membrane was coated with titanium dioxide (TiO). The chemical and physical changes of membranes were characterized by contact angle, scanning electron microscopy and porosity. The results found that TiO successfully modified the PVDF membrane by decreasing the contact angle from 127.1° to 114.3° on increasing the TiO concentration from 0.1 to 1.0 g/L. The contact angles were decreased with the increase of coating time. The water permeation after PVDF membrane modification decreased compared with the original membrane, whereas water fluxes increased with the increase of TiO concentration. TiO particles were observed on the membrane surface while the porosity of the membrane coated with TiO decreased. The optimum condition of membrane coating was obtained at 1.0 g/L of TiO and 60 min of coating time. The decolorization of RB 19 by photolysis and photolysis followed by filtration was less than 10%; in contrast, the decolorization of RB 19 by photocatalytic oxidation was as good as a photocatalytic membrane for 60 min. The TiO photocatalytic membrane is a feasible technology for RB 19 decolorization in wastewater.

摘要

本研究旨在通过对膜进行改性以提高亲水性,从而应用于光催化膜。采用二氧化钛(TiO₂)对改性聚偏氟乙烯(PVDF)平板膜进行涂层处理。通过接触角、扫描电子显微镜和孔隙率对膜的化学和物理变化进行表征。结果发现,随着TiO₂浓度从0.1 g/L增加到1.0 g/L,TiO₂成功地对PVDF膜进行了改性,使接触角从127.1°降至114.3°。接触角随涂层时间的增加而减小。PVDF膜改性后的水渗透率比原膜降低,而水通量随TiO₂浓度的增加而增加。在膜表面观察到TiO₂颗粒,而涂覆TiO₂的膜的孔隙率降低。膜涂层的最佳条件为TiO₂浓度1.0 g/L和涂层时间60分钟。光解以及光解后过滤对RB 19的脱色率小于10%;相比之下,光催化氧化对RB 19的脱色效果与光催化膜60分钟的效果相当。TiO₂光催化膜是一种用于废水中RB 19脱色的可行技术。

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